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InternetNews June 20, 2006 David Needle |
IBM Has World's Coolest Chip IBM's cryogenic research project yields a 500GHz processor. |
Technology Research News November 5, 2003 |
Process prints silicon circuits Researchers from Princeton University have demonstrated a way to use a flexible stamp to print thin-film transistors. The researchers' eventual goal is to directly print electronics on flexible surfaces. |
Military & Aerospace Electronics July 2006 John McHale |
Boeing to Develop New Electronic Circuits for Extreme Space Environments Boeing is part of a team that received a NASA contract to develop a reliable, cost-effective electronic technology that helps robotic and human space missions operate in environments of extreme cold and space radiation. |
Chemistry World July 3, 2012 Simon Perks |
Ultrafast transistors created in a vacuum Scientists at the University of Pittsburgh, US, have come up with a new type of transistor that uses a vacuum to conduct electrons a hundred times faster than the conventional solid-state version. |
Technology Research News June 4, 2003 Kimberly Patch |
Plastic transistors go vertical Researchers from the University of Cambridge in England have brought inexpensive, practical organic transistors a step closer to your grocery cart by devising a pair of processes that form small, vertical transistors from layers of printed polymer. |
Bio-IT World August 13, 2002 John Dodge |
Let's get Small Nanotechnology raises the bar for semiconductors as chips near single-digit nanometer proportions. |
IEEE Spectrum June 2006 Samuel K. Moore |
Cheap Chips for Next Wireless Frontier IBM engineers unveiled the first experimental 60-GHz transmitter and receiver chips. Now, researchers are presenting three key transceiver components built in a widely available and inexpensive silicon process technology. |
IEEE Spectrum May 2011 Keane & Kim |
Transistor Aging Measuring the degradation of microprocessors is tricky. Doing it better would unleash more processing power. |
Technology Research News December 17, 2003 Eric Smalley |
Microfluidics make flat screens A new method for making big, cheap flat screen displays is a bit like making muffins. Pour liquid polymer into microfluidic channels aligned above an array of electrodes, let cure, and you have organic thin film transistors. |
Technology Research News March 23, 2005 |
Layers promise cheap circuits The challenge is making organic transistors that work well electronically. |
IEEE Spectrum September 2008 |
Paper Transistor Researchers from Universidade Nova de Lisboa, in Portugal, say they've made a transistor in which paper acts as a functional component. |
Technology Research News October 22, 2003 |
Nanowires boost plastic circuits The move is on to develop flexible, cheap, plastic electronics, but so far organic circuits have fallen far short of silicon chip performance. Researchers from the Hahn-Meitner Institute in Germany have moved the field forward with a new way to make flexible transistors. |
InternetNews June 13, 2006 David Needle |
3-D Transistors in The Works Intel's researchers are closer to development of processors that use "tri-gate" or three-dimensional transistors, the microscopic, silicon-based switches that process the ones and zeros of the digital world. |
Technology Research News October 22, 2003 |
Single electrons perform logic The ultimate in transistors, which turn on and off in response to a flow of electricity, is a device that can be tripped by a single electron. Researchers from Hokkaido University have put together an AND logic circuit made from four single-electron tunneling transistors. |
Technology Research News January 28, 2004 |
Nanotubes tied to silicon circuit Connecting minuscule nanotube transistors to traditional silicon transistors enables the atomic-scale electronics to communicate with existing electronic equipment. |
Technology Research News January 26, 2005 |
Metals Speed Clear Circuits Researchers have improved the performance of a new type of transparent transistor. The zinc tin oxide thin-film transistor is transparent, difficult to scratch, and conducts electricity an order of magnitude faster than previous efforts using the same class of material. |
Technology Research News September 8, 2004 |
Nanotube Transistor Has Power Aiming to make electrical componets faster, researchers are working to make components from carbon nanotubes, which are rolled-up sheets of carbon atoms that can be smaller than a nanometer in diameter. |
IndustryWeek December 1, 2002 Patricia Panchak |
Technologies Of The Year -- Molecular Electronics Hewlett-Packard breakthrough could extend limits of silicon chips. |
PC World September 12, 2002 James Niccolai |
Tomorrow's CPU: Wireless Link Inside Intel finds new ways to shrink, speed chips, plus build in radio functions. |
Technology Research News February 23, 2005 |
Tiny transistors sniff chemicals Researchers from the University of Texas at Austin have found that the chemical sensing abilities of infinitesimally small transistors made from thin films of the organic crystal pentacene are quite different from those of larger transistors made from the same materials. |
Technology Research News March 12, 2003 |
Cold logic promises speedy devices Researchers from the University of Cambridge and Hitachi Cambridge Laboratory have made a superconducting logic circuit that computes very quickly and requires little power. |
Chemistry World February 5, 2015 Matthew Gunther |
Electron microscope turned into makeshift nano-thermometer Scientists in the US have developed a thermometer capable of detecting heat changes at the nanoscale. |
IEEE Spectrum July 2012 Miguel Miranda |
The Threat of Semiconductor Variability As transistors shrink, the problem of chip variability grows |
IEEE Spectrum February 2008 Behzad Razavi |
Gadgets Gab at 60 GHz Cheap silicon transceivers broadcasting in this still-unlicensed band may usher in the hi-def wireless home |
PC Magazine February 1, 2006 Sebastian Rupley |
Minding Moore's Law More speed and less power draw are the main mantras in the semiconductor business, and Intel, in partnership with QinetiQ, has developed new transistors to advance both goals. |
IEEE Spectrum August 2005 Justin Mullins |
Shedding Light On Organic Transistors The first single-crystal organic transistor that can be switched on and off by light is giving physicists a unique peek into the way photons interact with organic semiconductors. The new device could have a major impact on the way OLED displays are manufactured. |